格列齐特固体分散体控释片的研制与评价

R. Sunitha, K. Venugopal, S. Satyanarayana
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引用次数: 0

摘要

本研究采用HP β环糊精制备格列齐特固体分散体,以提高其溶解度,并将其掺入片剂中控释格列齐特。采用不同比例的HP β环糊精制备了格列齐特固体分散体(SD),并对其进行了评价。优化后的SD配方以羟丙基纤维素HPMC K 100M为原料掺入片剂中。对片剂的溶出度进行了分析和表征。由药物和聚合物按1:3的比例组成的制剂SD3的溶解度比纯药物提高了43倍。最佳处方SD13收率为98.96%,药物含量为99%。FTIR研究表明,药物与聚合物之间不存在不相容性。XRD研究表明,优化后的固体分散配方呈非晶态。约15个控释片共混制剂的微尺度特性评估表明,所有制剂都具有良好的流动特性。优选出最大药物含量为99.99%、16h释药率为99.96%的配方F15。释放动力学表明,药物的释放遵循零级顺序,在片剂中呈异常非粘性扩散转运。结果表明,固体分散和亲疏水聚合物在基质形成中的应用相结合,可以促进更好的溶解和吸收,并提高患者的依从性。
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Formulation and Evaluation of Gliclazide Solid Dispersions Incorporated Tablets for Controlled Drug Release
The current study deals with formulation and evaluation of gliclazide solid dispersion with HP β Cyclodextrin to enhance solubility and incorporate into tablet formulation for controlled release of gliclazide. Gliclazide solid dispersion (SD) prepared using varying ratios of HP β Cyclodextrin and evaluated. The optimized SD formulation incorporated into tablet by using hydroxypropyl cellulose, HPMC K 100M. The drug dissolution from tablet formulation analyzed and characterize. The formulation SD3 comprising of drug and polymer in 1:3 ratio displayed 43-fold increase in solubility when compared to pure drug. The formulation SD13 displayed maximum yield of 98.96% and maximum drug content of 99% chosen optimal for tablet formulation. FTIR studies revealed that there is no incompatibility between drug and polymers found. XRD studies revealed that the optimized solid dispersion formulation was found to be in amorphous state. Around 15 formulations of controlled release tablet blends evaluated for micrometric properties show that all the formulations posses’ good flow properties. Formulation F15 with maximum drug content of 99.99% and drug release of 99.96 % over 16h was chosen optimal and characterized. The release kinetics suggest that drug release followed zero order and release from tablets was anomalous non- fickian diffusion super case II transport. The results show that combination of solid dispersion and application of hydrophilic and hydrophobic polymers in matrix formation can facilitate better dissolution and absorption profile with greater patient compliance.
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